|本期目录/Table of Contents|

[1]朱克明,陶慧敏,徐硕.水稻抗虫害相关基因的研究进展[J].江苏农业科学,2017,45(20):1-5.
 Zhu Keming,et al.Research progress of pest resistance related genes in rice[J].Jiangsu Agricultural Sciences,2017,45(20):1-5.
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水稻抗虫害相关基因的研究进展(PDF)
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第45卷
期数:
2017年20期
页码:
1-5
栏目:
专论与综述
出版日期:
2017-10-20

文章信息/Info

Title:
Research progress of pest resistance related genes in rice
作者:
朱克明 陶慧敏 徐硕
江苏大学生命科学研究院,江苏镇江 212013
Author(s):
Zhu Keminget al
关键词:
水稻稻飞虱水稻黑尾叶蝉水稻二化螟抗虫害基因优质高产
Keywords:
-
分类号:
S435.112
DOI:
-
文献标志码:
A
摘要:
水稻是我国主要的粮食作物之一,随着异常天气的增多,导致水稻病虫害越来越严重,而关于水稻抗性品种的研究却不多。本文综述多种水稻抗虫害基因的研究进展,包括水稻黑尾叶蝉、稻飞虱、稻瘿蚊、水稻二化螟及其他虫害的基因等,并对此进行展望,以期为实现水稻的优质高产打下坚实基础。
Abstract:
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参考文献/References:

[1]Hu J,Xiao C,He Y Q. Recent progress on the genetics and molecular breeding of brown planthopper resistance in rice[J]. Rice,2016,9(1):30-42.
[2]Athwal D S,Pathak M D,Bacalangco E H,et al.Genetics of resistance to brown planthoppers and green leafhoppers in Oryza sativa L.[J]. Crop Science,1971,11(5):747-750.
[3]Murata K,Fujiwara M,Kaneda C,et al.RFLP mapping of a brown planthopper (Nilaparvata lugens Stl) resistance gene bph2 of indica rice introgressed into a japonica breeding line ‘Norin-PL4’[J]. Genes and Genetic Systems,1998,73(6):359-364.
[4]Tamura Y,Hattori M,Yoshioka H,et al.Map-based cloning and characterization of a brown planthopper resistance gene BPH26 from Oryza sativa L.ssp.indica cultivar ADR52[J]. Scientific Reports,2014,4:5872.
[5]Liu Y,Wu H,Chen H,et al. A gene cluster encoding lectin receptor kinases confers broad-spectrum and durable insect resistance in rice[J]. Nature Biotechnology,2015,33(3):301-305.
[6]Jairin J,Sansen K,Wongboon W,et al.Detection of a brown planthopper resistance gene bph4 at the same chromosomal position of Bph3 using two different genetic backgrounds of rice[J]. Breeding Science,2010,60(1):71-75.
[7]Khush G S,Karim A N M R,Angeles E R.Genetics of resistance of rice cultivar ARC10550 to Bangladesh brown pianthopper teletype[J]. Journal of Genetics,1985,64(2/3):121-125.
[8]Qiu Y F,Guo J P,Jing S L,et al.High-resolution mapping of the brown planthopper resistance gene Bph6 in rice and characterizing its resistance in the 9311 and Nipponbare near isogenic backgrounds[J]. Theoretical and Applied Genetics,2010,121(8):1601-1611.
[9]Qiu Y F,Guo J P,Jing S L,et al.Fine mapping of the rice brown planthopper resistance gene BPH7 and characterization of its resistance in the 93-11 background[J]. Euphytica,2014,198(3):369-379.
[10]Su C C,Zhai H Q,Wang C M,et al.SSR mapping of brown planthopper resistance gene Bph9 in Kaharamana,an Indica rice (Oryza sativa L.)[J]. Acta Genetica Sinica,2006,33(3):262-268.
[11]Ishii T,Brar D S,Multani D S,et al.Molecular tagging of genes for brown planthopper resistance and earliness introgressed from Oryza australiensis into cultivated rice,O.sativa[J]. Genome,1994,37(2):217-221.
[12]Hirabayashi H,Kaji R,Okamoto M,et al.Mapping QTLs for brown planthopper (BPH) resistance introgressed from Oryza officinalis in rice[J]. Advances in Rice Genetics,1998,268-270.
[13]Smith C M.Plant resistance to arthropods:molecular and conventional approaches[J]. Springer,2005,57(1):309-328.
[14]刘国庆,颜辉煌,傅强,等. 栽培稻的紧穗野生稻抗褐飞虱主效基因的遗传定位[J]. 科学通报,2001,46(9):738-742.
[15]Du B,Zhang W L,Liu B F,et al.Identification and characterization of Bph14,a gene conferring resistance to brown planthopper in rice[J]. Proceedings of the National Academy of Sciences,2009,106(52):22163-22168.
[16]时振英,祝莉莉,何光存.水稻蛋白激酶基因Pti1的克隆与分析[J]. 植物科学学报,2004,22(3):187-192.
[17]Huang Z,He G,Shu L,et al.Identification and mapping of two brown planthopper resistance genes in rice[J]. Theoretical and Applied Genetics,2001,102(6/7):929-934.
[18]Sun L H,Su C C,Wang C M,et al.Mapping of a major resistance gene to the brown planthopper in the rice cultivar Rathu Heenati[J]. Breeding Science,2005,55(4):391-396.
[19]Ji H,Kim S R,Kim Y H,et al.Map-based cloning and characterization of the BPH18 gene from wild rice conferring resistance to brown planthopper(BPH) insect pest[J]. Scientific Reports,2016,6:34376-34389.
[20]Jena K K,Jeung J U,Lee J H,et al.High-resolution mapping of a new brown planthopper (BPH) resistance gene,Bph18(t),and marker-assisted selection for BPH resistance in rice (Oryza sativa L.)[J]. Theoretical and Applied Genetics,2006,112(2):288-297.
[21]Huang D,Qiu Y,Zhang Y,et al.Fine mapping and characterization of BPH27,a brown planthopper resistance gene from wild rice (Oryza rufipogon Griff.)[J]. Theoretical and Applied Genetics,2013,126(1):219-229.
[22]Chen J W,Wang L,Pang X F,et al.Genetic analysis and fine mapping of a rice brown planthopper (Nilaparvata lugens Stl) resistance gene bph19(t)[J]. Molecular Genetics and Genomics,2006,275(4):321-329.
[23]Rahman M L,Jiang W,Chu S H,et al.High-resolution mapping of two rice brown planthopper resistance genes,Bph20(t) and Bph21(t),originating from Oryza minuta[J]. Theoretical and Applied Genetics,2009,119(7):1237-1246.
[24]Yara A,Phi C N,Matsumura M,et al.Development of near-isogenic lines for BPH25(t) and BPH26(t),which confer resistance to the brown planthopper,Nilaparvata lugens (Stl) in indica rice ‘ADR52’[J]. Breeding Science,2010,60(5):639-647.
[25]Tamura Y,Hattori M,Yoshioka H,et al.Map-based cloning and characterization of a brown planthopper resistance gene BPH26 from Oryza sativa L.ssp.indica cultivar ADR52[J]. Scientific Reports,2014,4:5872.
[26]Hu J,Zhou J B,Peng X X,et al.The Bphi008a gene interacts with the ethylene pathway and transcriptionally regulates MAPK genes in the response of rice to brown planthopper feeding[J]. Plant Physiology,2011,156(2):856-872.
[27]Wang Y,Cao L M,Zhang Y X,et al.Map-based cloning and characterization of BPH29,a B3 domain-containing recessive gene conferring brown planthopper resistance in rice[J]. Journal of Experimental Botany,2015,66(19):6035-6045.
[28]Yamasaki M,Yoshimura A,Yasui H.Genetic basis of ovicidal response to whitebacked planthopper (Sogatella furcifera Horváth) in rice (Oryza sativa L.)[J]. Molecular Breeding,2003,12(2):133-143.
[29]Guo H M,Li H C,Zhou S R,et al.Cis-12-oxo-phytodienoic acid stimulates rice defense response to a piercing-sucking insect[J]. Molecular Plant,2014,7(11):1683-1692.
[30]Tong X,Qi J,Zhu X,et al.The rice hydroperoxidelyase OsHPL3 functions in defense responses by modulating the oxylipinpathway[J]. Plant Journal for Cell and Molecular Biology,2012,71(5):763-775.
[31]Nemoto H,Ikeda R,Kaneda C.New genes for resistance to brown planthopper,Nilaparvata lugens Stl,in rice[J]. Japanese Journal of Breeding,1989,39(1):23-28.
[32]Ram T D R,Gautam S K,Ramesh K,et al.Identification of new genes for brown planthopper resistance in rice introgressed from O.glaberrima and O.minuta[J]. Rice Genetics Newsletter,2010,25:67-68.
[33]Sidhu G S,Khush G S,Medrano F G.A dominant gene in rice for resistance to white-backed planthopper and its relationship to other plant characteristics[J]. Euphytica,1979,28(2):227-232.
[34]Li X M,Zhai H Q,Wan J M,et al.Mapping of a new gene Wbph6(t) resistant to the whitebacked planthopper,Sogatella furcifera,in rice[J]. Rice Science,2004,11(3):86-90.
[35]刘志岩,刘光杰,寒川一成,等. 水稻抗白背飞虱基因Wbph2的初步定位[J]. 中国水稻科学,2002,16(4):311-314.
[36]谭光轩.药用野生稻重要基因的转移与定位[D]. 武汉:武汉大学,2003:82-97.
[37]Pathak M D. Stem borer and leafhopper-planthopper resistance in rice varieties[J]. Entomologia Experimentalis Et Applicata,1969,12 (5):789-800.
[38]Qi W,Li J C,Hu L F,et al.OsMPK3 positively regulates the JA signaling pathway and plant resistance to a chewing herbivore in rice[J]. Plant Cell Reports,2013,32(7):1075-1084.
[39]Tong X,Qi J,Zhu X,et al.The rice hydroperoxidelyase OsHPL3 functions in defense responses by modulating the oxylipinpathway[J]. The Plant Journal,2012,71(5):763-775.
[40]Lu J,Ju H P,Zhou G X,et al.An EAR-motif-containing ERF transcription factor affects herbivore-induced signaling,defense and resistance in rice[J]. The Plant Journal,2011,68(4):583-596.
[41]Fujita D,Doi K,Yoshimura A,et al.Mapping of a new resistance gene for green rice leafhopper introgressed from Oryza rufipogon Griff.into cultivated rice,Oryza sativa L.[J]. Rice Genetics Newsletter,2003,20:79-81.
[42]Fujita D,Doi K,Yoshimura A,et al.Introgression of a resistance gene for green rice leafhopper from Oryza nivara into cultivated rice,Oryza sativa L.[J]. Rice Genetics Newsletter,2004,21:64-66.
[43]Asano T,Tamura Y,Yasui H,et al.The rice GRH2 and GRH4 activate various defense responses to the green rice leafhopper and confer strong insect resistance[J]. Plant Biotechnology,2015,32(3):215-260.
[44]Chaudhary B P,Srivastava P S,Shrivastava M N,et al.Inheritance of resistance to gall midge in some cultivars of rice[C]//International Rice Genetics Symposium. Philippines:Laguna,1985:27-31.
[45]Katiyar S,Verulkar S,Chandel G,et al.Genetic analysis and pyramiding of two gall midge resistance genes (Gm-2 and Gm-6t) in rice(Oryza sativa L.)[J]. Euphytica,2001,122(2):327-334.
[46]Sama V S A K,Rawat N,Sundaram R M,et al.A putative candidate for the recessive gall midge resistance gene gm3 in rice identified and validated[J]. Theoretical and Applied Genetics,2014,127(1):113-124.
[47]Mohan M,Sathyanarayanan P V,Kumar A,et al.Molecular mapping of a resistance-specific PCR-based marker linked to a gall midge resistance gene(Gm4t) in rice[J]. Theoretical and Applied Genetics,1997,95(5/6):777-782.
[48]Kumar M,Shrivastava M,Samj R .Genetic analysis of ARC5984 for gall midge resistance-a reconsideration[J]. Rice Genetics Newsletter,1998,15:142-143.
[49]Sardesai N,Kumar A,Rajyashri K,et al.Identification and mapping of an AFLP marker linked to Gm7,a gall midge resistance gene and its conversion to a SCAR marker for its utility in marker aided selection in rice[J]. Theoretical and Applied Genetics,2002,105(5):691-698.
[50]Jain A,Ariyadasa R,Kumar A,et al.Tagging and mapping of a rice gall midge resistance gene,Gm8,and development of SCARs for use in marker-aided selection and gene pyramiding[J]. Theoretical and Applied Genetics,2004,109(7):1377-1384.
[51]Shrivastava M N,Kumar A,Bhandarkar S,et al.A new gene for resistance in rice to Asian rice gall midge (Orseolia oryzae Wood Mason) biotype 1 population at Raipur,India[J]. Euphytica,2003,130(1):143-145.
[52]黄炳超,张扬,肖汉祥.我国抗稻瘿蚊育种研究的新进展[J]. 作物研究,2004,18(4):201-203.
[53]Ye M,Luo S M,Xie J F,et al.Silencing COI1 in rice increases susceptibility to chewing insects and impairs inducible defense[J]. PLoS One,2012,7(4):e36214.
[54]Lee S H,Sakuraba Y,Lee T,et al.Mutation of Oryza sativa CORONATINE INSENSITIVE 1b(OsCOI1b) delays leaf senescence[J]. Journal of Integrative Plant Biology,2015,57(6):562-576.

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备注/Memo

备注/Memo:
收稿日期:2017-02-23
基金项目:国家自然科学基金面上项目(编号:31671720);国家自然科学基金青年基金(编号:31201189);江苏大学高级专业人才科研启动基金(编号:10JDG134);江苏省高校自然科学研究项目(编号:12KJB210002)。
作者简介:朱克明(1980—),男,江苏宜兴人,博士,助理研究员,主要从事水稻生物学研究。E-mail:uegzkg@sina.com.cn。
更新日期/Last Update: 2017-10-20